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geant4/examples/extended/electromagnetic/TestEm8/TestEm8.out
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Geant4 version $Name: geant4-03-00 $
(30-Jun-2000)
Copyright : Geant4 Collaboration
**********************************************
***** Table : Nb of materials = 12 *****
Material: Aluminium density: 2.700 g/cm3 temperature: 273.15 K pressure: 1.00 atm RadLength: 8.893 cm
---> Element: Aluminium Z = 13.0 N = 27.0 A = 26.98 g/mole fractionMass: 100.00 % Abundance 100.00 %
Material: Mylar density: 1.390 g/cm3 temperature: 273.15 K pressure: 1.00 atm RadLength: 19.770 cm
---> Element: Oxygen O Z = 8.0 N = 16.0 A = 16.00 g/mole fractionMass: 48.42 % Abundance 18.18 %
---> Element: Carbon C Z = 6.0 N = 6.0 A = 6.01 g/mole fractionMass: 45.47 % Abundance 45.45 %
---> Element: Hydrogen H Z = 1.0 N = 1.0 A = 1.01 g/mole fractionMass: 6.11 % Abundance 36.36 %
Material: Polypropelene density: 910.000 mg/cm3 temperature: 273.15 K pressure: 1.00 atm RadLength: 28.167 cm
---> Element: Hydrogen H Z = 1.0 N = 1.0 A = 1.01 g/mole fractionMass: 25.16 % Abundance 66.67 %
---> Element: Carbon C Z = 6.0 N = 6.0 A = 6.01 g/mole fractionMass: 74.84 % Abundance 33.33 %
Material: Kr density: 3.700 mg/cm3 temperature: 273.15 K pressure: 1.00 atm RadLength: 30.736 m
---> Element: Kr Z = 36.0 N = 83.8 A = 83.80 g/mole fractionMass: 100.00 % Abundance 100.00 %
Material: Argon density: 1.784 mg/cm3 temperature: 273.15 K pressure: 1.00 atm RadLength: 109.604 m
---> Element: Argon Ar Z = 18.0 N = 39.9 A = 39.95 g/mole fractionMass: 100.00 % Abundance 100.00 %
Material: N2 density: 1.251 mg/cm3 temperature: 273.15 K pressure: 1.00 atm RadLength: 303.846 m
---> Element: Nitrogen N Z = 7.0 N = 14.0 A = 14.01 g/mole fractionMass: 100.00 % Abundance 100.00 %
Material: O2 density: 1.429 mg/cm3 temperature: 273.15 K pressure: 1.00 atm RadLength: 239.621 m
---> Element: Oxygen O Z = 8.0 N = 16.0 A = 16.00 g/mole fractionMass: 100.00 % Abundance 100.00 %
Material: Air density: 1.293 mg/cm3 temperature: 273.15 K pressure: 1.00 atm RadLength: 283.293 m
---> Element: Nitrogen N Z = 7.0 N = 14.0 A = 14.01 g/mole fractionMass: 75.57 % Abundance 78.48 %
---> Element: Oxygen O Z = 8.0 N = 16.0 A = 16.00 g/mole fractionMass: 23.15 % Abundance 21.05 %
---> Element: Argon Ar Z = 18.0 N = 39.9 A = 39.95 g/mole fractionMass: 1.28 % Abundance 0.47 %
Material: Xenon density: 5.858 mg/cm3 temperature: 273.15 K pressure: 1.00 atm RadLength: 14.478 m
---> Element: Xenon Z = 54.0 N = 131.3 A = 131.29 g/mole fractionMass: 100.00 % Abundance 100.00 %
Material: CO2 density: 1.977 mg/cm3 temperature: 273.15 K pressure: 1.00 atm RadLength: 158.123 m
---> Element: Carbon C Z = 6.0 N = 6.0 A = 6.01 g/mole fractionMass: 15.81 % Abundance 33.33 %
---> Element: Oxygen O Z = 8.0 N = 16.0 A = 16.00 g/mole fractionMass: 84.19 % Abundance 66.67 %
Material: Xe20CO2 density: 5.082 mg/cm3 temperature: 273.15 K pressure: 1.00 atm RadLength: 17.695 m
---> Element: Xenon Z = 54.0 N = 131.3 A = 131.29 g/mole fractionMass: 92.20 % Abundance 53.29 %
---> Element: Carbon C Z = 6.0 N = 6.0 A = 6.01 g/mole fractionMass: 1.23 % Abundance 15.57 %
---> Element: Oxygen O Z = 8.0 N = 16.0 A = 16.00 g/mole fractionMass: 6.57 % Abundance 31.14 %
Material: Kr20CO2 density: 3.601 mg/cm3 temperature: 273.15 K pressure: 1.00 atm RadLength: 33.957 m
---> Element: Kr Z = 36.0 N = 83.8 A = 83.80 g/mole fractionMass: 89.00 % Abundance 55.02 %
---> Element: Carbon C Z = 6.0 N = 6.0 A = 6.01 g/mole fractionMass: 1.74 % Abundance 14.99 %
---> Element: Oxygen O Z = 8.0 N = 16.0 A = 16.00 g/mole fractionMass: 9.26 % Abundance 29.99 %
The WORLD is made of 8e+02mm of Air, the transverse size (R) of the world is 2e+02 mm.
The ABSORBER is made of 40mm of Kr20CO2, the transverse size (R) is 1e+02 mm.
Z position of the (middle of the) absorber 3.6e+02 mm.
zRad = 1.5e+02 mm
radThick = 3.5e+02 mm
zModule = 10 mm
i = 0
10 mm 12 mm 13 mm 15 mm 16 mm 18 mm 19 mm 21 mm 22 mm 24 mm 25 mm 27 mm 28 mm 30 mm 31 mm 33 mm 34 mm 36 mm 37 mm 39 mm 41 mm 42 mm 44 mm 45 mm 47 mm 48 mm 50 mm 51 mm 53 mm 54 mm 56 mm 57 mm 59 mm 60 mm 62 mm 63 mm 65 mm 66 mm 68 mm 70 mm 71 mm 73 mm 74 mm 76 mm 77 mm 79 mm 80 mm 82 mm 83 mm 85 mm 86 mm 88 mm 89 mm 91 mm 92 mm 94 mm 95 mm 97 mm 98 mm 1e+02 mm 1e+02 mm 1e+02 mm 1e+02 mm 1.1e+02 mm 1.1e+02 mm 1.1e+02 mm 1.1e+02 mm 1.1e+02 mm 1.1e+02 mm 1.2e+02 mm 1.2e+02 mm 1.2e+02 mm 1.2e+02 mm 1.2e+02 mm 1.2e+02 mm 1.2e+02 mm 1.3e+02 mm 1.3e+02 mm 1.3e+02 mm 1.3e+02 mm 1.3e+02 mm 1.3e+02 mm 1.4e+02 mm 1.4e+02 mm 1.4e+02 mm 1.4e+02 mm 1.4e+02 mm 1.4e+02 mm 1.4e+02 mm 1.5e+02 mm 1.5e+02 mm 1.5e+02 mm 1.5e+02 mm 1.5e+02 mm 1.5e+02 mm 1.5e+02 mm 1.6e+02 mm 1.6e+02 mm 1.6e+02 mm 1.6e+02 mm 1.6e+02 mm 1.6e+02 mm 1.7e+02 mm 1.7e+02 mm 1.7e+02 mm 1.7e+02 mm 1.7e+02 mm 1.7e+02 mm 1.7e+02 mm 1.8e+02 mm 1.8e+02 mm 1.8e+02 mm 1.8e+02 mm 1.8e+02 mm 1.8e+02 mm 1.9e+02 mm 1.9e+02 mm 1.9e+02 mm 1.9e+02 mm 1.9e+02 mm 1.9e+02 mm 1.9e+02 mm 2e+02 mm 2e+02 mm 2e+02 mm 2e+02 mm 2e+02 mm 2e+02 mm 2.1e+02 mm 2.1e+02 mm 2.1e+02 mm 2.1e+02 mm 2.1e+02 mm 2.1e+02 mm 2.1e+02 mm 2.2e+02 mm 2.2e+02 mm 2.2e+02 mm 2.2e+02 mm 2.2e+02 mm 2.2e+02 mm 2.3e+02 mm 2.3e+02 mm 2.3e+02 mm 2.3e+02 mm 2.3e+02 mm 2.3e+02 mm 2.3e+02 mm 2.4e+02 mm 2.4e+02 mm 2.4e+02 mm 2.4e+02 mm 2.4e+02 mm 2.4e+02 mm 2.4e+02 mm 2.5e+02 mm 2.5e+02 mm 2.5e+02 mm 2.5e+02 mm 2.5e+02 mm 2.5e+02 mm 2.6e+02 mm 2.6e+02 mm 2.6e+02 mm 2.6e+02 mm 2.6e+02 mm 2.6e+02 mm 2.6e+02 mm 2.7e+02 mm 2.7e+02 mm 2.7e+02 mm 2.7e+02 mm 2.7e+02 mm 2.7e+02 mm 2.8e+02 mm 2.8e+02 mm 2.8e+02 mm 2.8e+02 mm 2.8e+02 mm 2.8e+02 mm 2.8e+02 mm 2.9e+02 mm 2.9e+02 mm 2.9e+02 mm 2.9e+02 mm 2.9e+02 mm 2.9e+02 mm 3e+02 mm
the number of TR radiator plates = 188
plate plasma energy = 30 eV
gas plasma energy = 0.73 eV
Irregular X-ray TR model is called
0 fGamma = 107.6 sumE = 0.002585
1 fGamma = 123.4 sumE = 0.00372
2 fGamma = 141.5 sumE = 0.005303
3 fGamma = 162.3 sumE = 0.007488
4 fGamma = 186.2 sumE = 0.01043
5 fGamma = 213.7 sumE = 0.01448
6 fGamma = 245.2 sumE = 0.02005
7 fGamma = 281.3 sumE = 0.02763
8 fGamma = 322.9 sumE = 0.03789
9 fGamma = 370.5 sumE = 0.05165
10 fGamma = 425.3 sumE = 0.06986
11 fGamma = 488.2 sumE = 0.09366
12 fGamma = 560.3 sumE = 0.1243
13 fGamma = 643.2 sumE = 0.1632
14 fGamma = 738.3 sumE = 0.2118
15 fGamma = 847.6 sumE = 0.2714
16 fGamma = 973 sumE = 0.3433
17 fGamma = 1117 sumE = 0.4288
18 fGamma = 1282 sumE = 0.5287
19 fGamma = 1472 sumE = 0.6434
20 fGamma = 1690 sumE = 0.7732
21 fGamma = 1940 sumE = 0.9176
22 fGamma = 2228 sumE = 1.076
23 fGamma = 2558 sumE = 1.246
24 fGamma = 2936 sumE = 1.427
25 fGamma = 3371 sumE = 1.616
26 fGamma = 3871 sumE = 1.81
27 fGamma = 4444 sumE = 2.006
28 fGamma = 5102 sumE = 2.219
29 fGamma = 5858 sumE = 2.558
30 fGamma = 6726 sumE = 2.913
31 fGamma = 7722 sumE = 3.279
32 fGamma = 8866 sumE = 3.655
33 fGamma = 1.018e+04 sumE = 4.035
34 fGamma = 1.169e+04 sumE = 4.417
35 fGamma = 1.342e+04 sumE = 4.797
36 fGamma = 1.541e+04 sumE = 5.172
37 fGamma = 1.769e+04 sumE = 5.538
38 fGamma = 2.031e+04 sumE = 5.893
39 fGamma = 2.332e+04 sumE = 6.234
40 fGamma = 2.677e+04 sumE = 6.557
41 fGamma = 3.074e+04 sumE = 6.862
42 fGamma = 3.529e+04 sumE = 7.147
43 fGamma = 4.052e+04 sumE = 7.409
44 fGamma = 4.652e+04 sumE = 7.649
45 fGamma = 5.342e+04 sumE = 7.865
46 fGamma = 6.133e+04 sumE = 8.059
47 fGamma = 7.042e+04 sumE = 8.229
48 fGamma = 8.085e+04 sumE = 8.377
49 fGamma = 9.283e+04 sumE = 8.504
total time for build X-ray TR tables = 23.54 s
Em8PhysicsList::SetCuts:CutLength : 1 mm
phot: Total cross sections from a parametrisation. Good description from 10 KeV to 50 MeV for all Z
Sandia crossSection below 50 KeV
PhysicsTables from 50 keV to 50 MeV in 100 bins.
compt: Total cross sections from a parametrisation. Good description from 10 KeV to (100/Z) GeV.
Scattered gamma energy according Klein-Nishina.
PhysicsTables from 10 keV to 100 GeV in 100 bins.
conv: Total cross sections from a parametrisation. Good description from 1.5 MeV to 100 GeV for all Z.
e+e- energies according Bethe-Heitler
PhysicsTables from 1.022 MeV to 100 GeV in 100 bins.
eIoni: delta cross sections from Moller+Bhabha. Good description from 1 KeV to 100 GeV.
delta ray energy sampled from differential Xsection.
PhysicsTables from 1 keV to 100 TeV in 100 bins.
eIoni Minimum Delta cut in range=0.1 mm.
material min.delta energy(keV)
Aluminium 125.06
Mylar 117.99
Polypropelene 111.37
Kr 1.0737
Argon 0.99
N2 0.99
O2 0.99
Air 0.99
Xenon 1.8725
CO2 0.99
Xe20CO2 1.6715
Kr20CO2 1.088
eBrem: Total cross sections from a NEW parametrisation based on the EEDL data library.
Good description from 1 KeV to 100 GeV.
log scale extrapolation above 100 GeV
Gamma energy sampled from a parametrised formula.
PhysicsTables from 1 keV to 100 TeV in 100 bins.
hIoni Minimum Delta cut in range=0.1 mm.
material min.delta energy(keV)
Aluminium 125.06
Mylar 117.99
Polypropelene 111.37
Kr 1.0737
Argon 0.99
N2 0.99
O2 0.99
Air 0.99
Xenon 1.8725
CO2 0.99
Xe20CO2 1.6715
Kr20CO2 1.088
hIoni: Knock-on electron cross sections .
Good description above the mean excitation energy.
delta ray energy sampled from differential Xsection.
PhysicsTables from 1 keV to 100 TeV in 100 bins.
total time(SetCuts)=41.1 s
#
# Macro file 'run11.mac' for the initialization phase of "TestEm8.cc"
#
# It creates the default geometry (simple absorber cylinder )
#
#
#control/saveHistory
#
/run/verbose 2
#
/run/initialize
#
#/calor/setAbsMat Xenon
#
#/calor/setAbsThick 20.0 mm
#
#/calor/setAbsRad 100.0 mm
#
#/calor/update
#
# hist file name
#
#/plots/sethistName g4.p11
#
# PLOT: energy deposit distribution in absorber
#
#/plots/setnbinEn 95
#/plots/setEnlow 0.0 MeV
#/plots/setEnhigh 0.1 MeV
#
#/calor/cutG 3.0 mm
#
#/calor/cutE 3.0 mm
#
/run/initialize
/run/particle/dumpCutValues
============= The cut Energy ==============================
gamma e-
Cut in range 1 mm 1 mm
Cut in energy
Aluminium 6.89 keV 597 keV
Mylar 3.48 keV 541 keV
Polypropelene 2.75 keV 502 keV
Kr 990 eV 1.07 keV
Argon 990 eV 990 eV
N2 990 eV 990 eV
O2 990 eV 990 eV
Air 990 eV 990 eV
Xenon 990 eV 1.95 keV
CO2 990 eV 990 eV
Xe20CO2 990 eV 1.67 keV
Kr20CO2 990 eV 1.09 keV
===================================================
#
/gun/particle e-
#
#/gun/energy 200.00 GeV
#
/gun/energy 9000.0 MeV
#
#/tracking/verbose 2
#
/run/beamOn 1000
### Run 0 start.
--------- Ranecu engine status ---------
Initial seed (index) = 0
Current couple of seeds = 9876, 54321
----------------------------------------
Start closing geometry.
Start Run processing.
---> Begin of Event: 0
Run terminated.
Run Summary
Number of events processed : 1000
User=499.2s Real=528.93s Sys=2.64s
================== run summary =====================
end of Run TotNbofEvents = 1000
mean charged track length in absorber=43.6288 +- 0.226983 mm
mean energy deposit in absorber=0.105986 +- 0.00116297 MeV
mean number of steps in absorber (charged) =523.456 +- 3.87851
mean number of steps in absorber (neutral) =5.124 +- 0.0694451
mean number of charged secondaries = 1.402 +- 0.0366933
mean number of neutral secondaries = 0.017 +- 0.00408791
mean number of e-s =1.402 and e+s =0
(number) transmission coeff=0.109 reflection coeff=0
--------- Ranecu engine status ---------
Initial seed (index) = 0
Current couple of seeds = 1680269066, 2086392423
----------------------------------------
#
#
G4 kernel has come to Quit state.
Deletion of G4 kernel class start.
UserDetectorConstruction deleted.
UserPhysicsList deleted.
UserRunAction deleted.
UserPrimaryGenerator deleted.
G4SDManager deleted.
EventManager deleted.
UImanager deleted.
StateManager deleted.
RunManager is deleting.